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首页> 外文期刊>International Journal of Rotating Machinery >Numerical Predictions of Cavitating Flow around Model Scale Propellers by CFD and Advanced Model Calibration
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Numerical Predictions of Cavitating Flow around Model Scale Propellers by CFD and Advanced Model Calibration

机译:CFD和高级模型校准对模型尺度螺旋桨周围空化流的数值预测

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The numerical predictions of the cavitating flow around two model scale propellers in uniform inflow are presented and discussed. The simulations are carried out using a commercial CFD solver. The homogeneous model is used and the influence of three widespread mass transfer models, on the accuracy of the numerical predictions, is evaluated. The mass transfer models in question share the common feature of employing empirical coefficients to adjust mass transfer rate from water to vapour and back, which can affect the stability and accuracy of the predictions. Thus, for a fair and congruent comparison, the empirical coefficients of the different mass transfer models are first properly calibrated using an optimization strategy. The numerical results obtained, with the three different calibrated mass transfer models, are very similar to each other for two selected model scale propellers. Nevertheless, a tendency to overestimate the cavity extension is observed, and consequently the thrust, in the most severe operational conditions, is not properly predicted.
机译:给出并讨论了均匀流入时两个模型比例螺旋桨周围空化流的数值预测。使用商用CFD求解器进行仿真。使用了均质模型,并评估了三种广泛的传质模型对数值预测准确性的影响。所讨论的传质模型具有使用经验系数来调整从水到蒸汽再到水的传质速率的共同特征,这会影响预测的稳定性和准确性。因此,为了公平合理地比较,首先使用优化策略正确校准了不同传质模型的经验系数。对于两个选定的模型比例螺旋桨,使用三种不同的校准质量传递模型获得的数值结果彼此非常相似。然而,观察到高估腔体延伸的趋势,因此在最严酷的操作条件下,推力不能正确预测。

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